错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Numerical Case Study of Cubic Autocatalysis Nanotechnology of Slanted Magnetic Force and Slippage Velocity of Three-Dimensional Carreau Nanofluid Flow

  • Xiao Xin,
  • Wasim Jamshed,
  • Mohamed R. Eid,
  • Rabia Safdar,
  • Syed M. Hussain,
  • Hijaz Ahmad,
  • Adnan

摘要

Within the most recent effort, a non-Newtonian inclination magnetized Carreau nanofluid that has such a cubed autocatalysis impact is detailed. When the flow behavior is moved via a magnetic field, the speed of the fluid is thoroughly investigated under these conditions. The findings about the temperature transparency of the Carreau nanofluid are obtained via the use of temperature-dependent heat transfer, and the measurement of the nanofluid’s amount is accomplished by the utilization of homogeneous heterogeneous chemical processes. The physical model is used to construct partial differential equations (PDEs), which are then processed via variables that are comparable in order to obtain ordinary differential equations (ODEs). Also offered for operation is bvp4c which generates their analytical data. A combination of charts and statistical diagrams is used to display the findings. The movement of nanoparticles from inside the fluid is represented by the uniform chemical process. Furthermore, due to the fact that these nanoparticles are buried in the fluid, the temperature rises in both shear and shear thickness situations. Additionally, the higher magnetic force decreases the Lorentz force, which in turn decreases the movement of the nanofluid at reduced rates.